Koret School of Veterinary Medicine, The Hebrew University of Jerusalem, Rehovot, Israel.
BMC Microbiol. 2012 Jul 5;12:133. doi: 10.1186/1471-2180-12-133.
The parasitic nematode Spirocerca lupi (Spirurida: Thelaziidae), the canine esophageal worm, is the causative agent of spirocercosis, a disease causing morbidity and mortality in dogs. Spirocerca lupi has a complex life cycle, involving an obligatory coleopteran intermediate host (vector), an optional paratenic host, and a definitive canid host. The diagnosis of spirocercosis is challenging, especially in the early disease stages, when adult worms and clinical signs are absent. Thus, alternative approaches are needed to promote early diagnosis. The interaction between nematodes and their bacterial symbionts has recently become a focus of novel treatment regimens for other helminthic diseases.
Using 16S rDNA-based molecular methods, here we found a novel bacterial symbiont in S. lupi that is closely related to Comamonas species (Brukholderiales: Comamonadaceae) of the beta-proteobacteria. Its DNA was detected in eggs, larvae and adult stages of S. lupi. Using fluorescent in situ hybridization technique, we localized Comamonas sp. to the gut epithelial cells of the nematode larvae. Specific PCR enabled the detection of this symbiont's DNA in blood obtained from dogs diagnosed with spirocercosis.
The discovery of a new Comamonas sp. in S. lupi increase the complexity of the interactions among the organisms involved in this system, and may open innovative approaches for diagnosis and control of spirocercosis in dogs.
寄生线虫犬食道虫(旋尾目:Thelaziidae)是犬食道虫病的病原体,可导致犬类发病和死亡。犬食道虫具有复杂的生活史,涉及到一种必需的鞘翅目中间宿主(传播媒介)、一种可选的副宿主和一种明确的犬宿主。犬食道虫病的诊断具有挑战性,尤其是在早期疾病阶段,此时成虫和临床症状均不存在。因此,需要替代方法来促进早期诊断。最近,线虫与其细菌共生体之间的相互作用已成为其他寄生虫病新治疗方案的焦点。
我们使用基于 16S rDNA 的分子方法,在犬食道虫中发现了一种新的细菌共生体,该共生体与β变形菌的布鲁克氏菌目(Comamonadaceae)的康氏杆菌属(Comamonas)密切相关。在犬食道虫的卵、幼虫和成虫阶段都检测到了其 DNA。利用荧光原位杂交技术,我们将 Comamonas sp. 定位到线虫幼虫的肠道上皮细胞。通过特定的 PCR 可以检测到从诊断患有犬食道虫病的犬血液中获得的这种共生体的 DNA。
在犬食道虫中发现的新康氏杆菌属增加了参与该系统的生物体之间相互作用的复杂性,并可能为犬食道虫病的诊断和控制开辟新的方法。